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  • Faculty of Pharmacy
  • Course Structure Diagram with Credits
  • General Chemistry
  • Learning Outcomes
  • Description
  • Content
  • Learning Outcomes
  • Learning Activities and Teaching Methods
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  • Assessment Methods

  • Will be able to explain the substance.
  • Defines the substance.
  • List the properties of matter.
  • Define pure substance.
  • Defines the mixture.
  • Distinguishes the types of mixtures.
  • Defines the element.
  • Defines the compound.
  • Explain the concept of energy.
  • Defines the concept of energy.
  • Classify the types of energy.
  • Explain the states of matter.
  • Distinguishes the states of matter.
  • Compare the properties of states of matter.
  • Be able to distinguish unit systems.
  • Distinguish between ISI unit systems.
  • Distinguish between derived ISI unit systems.
  • Analyzes unit conversion operations.
  • Explain Atoms, Molecules and Ions.
  • Defines the atom.
  • Defines the molecule.
  • Defines the ion.
  • Defines cation.
  • Defines anion.
  • Explain the Development of Atomic Theory and Laws.
  • Explains the atomic theory.
  • Explains the quantum theory.
  • Explain the electronic structure of atoms.
  • Explains quantum number.
  • Distinguish the principal quantum number.
  • Angular Momentum (Subshell) distinguishes quantum numbers.
  • Distinguish magnetic quantum numbers.
  • It distinguishes the spin quantum number.
  • Explain the energy levels of orbitals.
  • Distinguishes electron configurations.
  • Explain Hunds rule.
  • Explain the Aufbau Principle.
  • Explain the Pauli exclusion principle.
  • Simulates the electron configurations of atoms.
  • Simulates the electron configurations of ions.
  • Explain the radii of atoms and ions.
  • Explains atomic radius.
  • Explain the ionic radius.
  • Compares the radii of different atoms and ions.
  • Explain Ionization Energy.
  • Explains ionization energy.
  • Compares the ionization energies of different atoms and ions.
  • Explain Electron Affinity.
  • Explains electron affinity.
  • Explain other periodic properties.
  • Compare the properties of elements depending on their positions in the periodic table.
  • Explain Lewis Theory.
  • Describe the Lewis symbols of atoms.
  • Explains the octet rule.
  • Explain Ionic Bonding.
  • Explain ionic bonding.
  • Demonstrate ionic bonding using a Lewis structure.
  • Explain covalent bonding.
  • Explain covalent bond.
  • Demonstrate covalent bonding using a Lewis structure.
  • Explain the types of covalent bonds.
  • Explains resonance.
  • Explain the formal load.
  • Explain bond energy.
  • Defines bond energy.
  • Describes bond separation.
  • Describe bond formation.
  • Compares the energies of different types of bonds.
  • Explain molecular geometries.
  • Explain the electron group geometry.
  • Explains molecular geometry.
  • Determines the molecular geometry with the VSEPR theory.
  • Classifies the types of molecules that do not have an unshared electron pair on the central atom.
  • Classifies the types of molecules that have an unshared electron pair on the central atom.
  • Describe the geometries of molecules with multiple bonds.
  • Compare the polarities of polyatomic molecules.
  • Explain dipole moment.
  • Explains the valence bond theory.
  • Explain hybridization.
  • Describe hybrid orbitals.
  • Explains the molecular orbital theory.
  • Explain Atomic Mass.
  • Calculates the average atomic mass of different isotopes.
  • Explain the concept of mole and Avogadro's number.
  • Explain Avogadro's number.
  • Explains molar mass.
  • Calculates the molar masses of different compounds.
  • Explain chemical reactions and equations.
  • Classify chemical reactions.
  • Balances chemical reaction equations.
  • Be able to determine chemical formulas.
  • Performs calculations related to determining simple formulas.
  • Performs calculations related to determining the molecular formula.
  • Explain Gas Pressure.
  • Classify manometers.
  • Explain the Gas Laws.
  • Explain the general properties of gases.
  • Explains Boyle's law
  • Explain Charles' law.
  • Explain Avogadro's law.
  • Explains the relationship between temperature and gas pressure
  • Explain the combined gas law.
  • Explain the Ideal Gas Equation.
  • Solve an unknown in the equation using the ideal gas equation.
  • Explain gas mixtures.
  • Explain Dalton's law of partial pressures.
  • Calculates the total pressure using the law of partial pressures.
  • Explain mole fractions and make calculations.
  • Explain the Kinetic Theory of Gases.
  • Explains the types of speed.
  • Calculates the speeds of various types of gas using equations.
  • Explains effusion.
  • Explain diffusion.
  • Calculates the unknown parameter according to Graham's law of diffusion.
  • Explain the behavior of non-ideal gases.
  • Explain non-ideal gas.
  • It uses the Van der Waals Equation.
  • Explain Intermolecular Forces.
  • Explain Dipole-Dipole forces.
  • Explains London (Dispersion) forces.
  • Explains Hydrogen Bonding.
  • Explain liquids.
  • Explains the general properties of liquids.
  • Defines viscosity.
  • Explain surface tension.
  • Calculates the vapor pressure of liquid.
  • Defines the concepts related to phase changes.
  • Be able to explain solids.
  • Explain the general properties of solids.
  • Explains the tightest stacking.
  • Explains coordination number.
  • Explains the concepts of crystal lattice and unit cell.
  • Calculates the number of atoms in the unit cell.
  • Explain the types of bonding in solids.
  • Be able to make chemical reaction calculations.
  • Calculates the molarity of a solution.
  • Performs efficiency calculations.
  • Calculates percentage impurity.

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